Weldability of Cold-Roll-Bonded Fe–Al Clad Sheets in Dissimilar Joining: Effects of Sheet Configuration and Internal Steel-Layer Melting

Cold-roll-bonded (CRB) Fe–Al clad sheets, which incorporate an internal steel layer within the clad structure, are candidate materials for dissimilar joining in lightweight structural applications, yet systematic comparisons of their weldability across multiple joining processes remain limited. This study evaluates the process-dependent weldability of CRB Fe–Al clad sheets using three joining processes: laser lap welding, DC resistance spot welding, and cold metal transfer-pulse (CMT-P) arc welding. Weld appearance, cross-sectional morphology, tensile shear behavior, and fracture characteristics were assessed for multiple sheet configurations and clad-layer thicknesses. Across all three processes, configurations that placed the clad sheet directly toward the heat source were prone to cracking or strength degradation when the internal steel layer melted extensively, whereas limiting steel-layer involvement produced more stable joints. Among the three processes, resistance spot welding provided the widest workable process window, while laser and CMT-P arc welding achieved peak strengths only within a narrow heat-input range. These findings indicate that the role of the internal steel layer is process-dependent and provide practical guidance for sheet configuration and parameter selection when joining CRB Fe–Al clad sheets to steel or aluminum components.

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Publication Details

Journal
Metals
Published
2026-09-04
DOI
https://doi.org/10.3390/met16090992
Primary Topic
Advanced Welding Techniques Analysis
Type
article
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article

Weldability of Cold-Roll-Bonded Fe–Al Clad Sheets in Dissimilar Joining: Effects of Sheet Configuration and Internal Steel-Layer Melting

H. Park, Hyun Jin Woo, Seung Cheol Shin, Yong Kim
Metals
Advanced Welding Techniques Analysis
article

Weldability of Cold-Roll-Bonded Fe–Al Clad Sheets in Dissimilar Joining: Effects of Sheet Configuration and Internal Steel-Layer Melting

H. Park, Hyun Jin Woo, Seung Cheol Shin, Yong Kim
article en

Abstract

Cold-roll-bonded (CRB) Fe–Al clad sheets, which incorporate an internal steel layer within the clad structure, are candidate materials for dissimilar joining in lightweight structural applications, yet systematic comparisons of their weldability across multiple joining processes remain limited. This study evaluates the process-dependent weldability of CRB Fe–Al clad sheets using three joining processes: laser lap welding, DC resistance spot welding, and cold metal transfer-pulse (CMT-P) arc welding. Weld appearance, cross-sectional morphology, tensile shear behavior, and fracture characteristics were assessed for multiple sheet configurations and clad-layer thicknesses. Across all three processes, configurations that placed the clad sheet directly toward the heat source were prone to cracking or strength degradation when the internal steel layer melted extensively, whereas limiting steel-layer involvement produced more stable joints. Among the three processes, resistance spot welding provided the widest workable process window, while laser and CMT-P arc welding achieved peak strengths only within a narrow heat-input range. These findings indicate that the role of the internal steel layer is process-dependent and provide practical guidance for sheet configuration and parameter selection when joining CRB Fe–Al clad sheets to steel or aluminum components.

MetalsVol. 16(9)
Hyundai Mobis (South Korea) (KR), Institute for Advanced Engineering (KR)
Openalex Percentile: Top 19%
Advanced Welding Techniques Analysis
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